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PMID: 11579100 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Phosphotyrosyl peptides block Stat3-mediated DNA binding activity, gene regulation, and cell transformation.

The Journal of biological chemistry ·Vol. 276 ·No. 48 ·2001-11-30 ·Pages 45443-55

Turkson J, Ryan D, Kim JS, Zhang Y, Chen Z, Haura E, Laudano A, Sebti S, Hamilton AD, Jove R

Abstract

Signal transducers and activators of transcription (STATs) comprise a family of cytoplasmic signaling proteins that participates in normal cellular responses to cytokines and growth factors. Frequently, however, constitutive activation of certain STAT family members, particularly Stat3, has accompanied a wide variety of human malignancies. To identify small molecule inhibitors of Stat3, we investigated the ability of the Stat3 SH2 domain-binding peptide, PY*LKTK (where Y* represents phosphotyrosine), to disrupt Stat3 activity in vitro. The presence of PY*LKTK, but not PYLKTK or PFLKTK, in nuclear extracts results in significant reduction in the levels of DNA binding activities of Stat3, to a lesser extent of Stat1, and with no effect on that of Stat5. Analyses of alanine scanning mutagenesis and deletion derivatives of PY*LKTK reveal that the Leu residue at the Y+1 position and a substituent at the Y-1 position (but not necessarily Pro) are essential for the disruption of active Stat3, thereby mapping the minimum active sequence to the tripeptide, XY*L. Studies involving bead-coupled PY*LKTK peptide demonstrate that this phosphopeptide directly complexes with Stat3 monomers in vitro, suggesting that PY*LKTK disrupts Stat3:Stat3 dimers. As evidence for the functional importance of peptide-directed inhibition of Stat3, PY*LKTK-mts (mts, membrane translocating sequence) selectively inhibits constitutive and ligand-induced Stat3 activation in vivo. Furthermore, PY*LKTK-mts suppresses transformation by the Src oncoprotein, which has been shown previously to require constitutive Stat3 activation. Altogether, we have identified a minimal peptide that inhibits Stat3 signaling and provides the conceptual basis for use of this peptide as a lead for novel peptidomimetic drug design.

MeSH Terms
3T3 Cells Alanine/chemistry Animals Baculoviridae/genetics Cell Line Cell Nucleus/metabolism Cell Transformation, Neoplastic Cytokines/metabolism Cytosol/metabolism DNA/metabolism DNA-Binding Proteins/antagonists & inhibitors,metabolism Dimerization Dose-Response Relationship, Drug Drug Design Gene Expression Regulation Growth Substances/metabolism Insecta Luciferases/metabolism Mice Models, Biological Mutation Peptides/chemistry,metabolism,pharmacology Phosphopeptides/chemistry Phosphotyrosine/chemistry Plasmids/metabolism Protein Binding Protein Structure, Tertiary STAT3 Transcription Factor Signal Transduction Time Factors Trans-Activators/antagonists & inhibitors,metabolism Transcription, Genetic Transfection src Homology Domains
Chemicals
Cytokines DNA-Binding Proteins Growth Substances Peptides Phosphopeptides STAT3 Transcription Factor Stat3 protein, mouse Trans-Activators Phosphotyrosine DNA Luciferases Alanine
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Turkson J
Molecular Oncology and Drug Discovery Programs, H. Lee Moffitt Cancer Center and Research Institute, University of South Florida College of Medicine, Tampa, Florida 33612, USA. [email protected]
Ryan D
Kim J S
Zhang Y
Chen Z
Haura E
Laudano A
Sebti S
Hamilton A D
Jove R
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2001-11-30
Epub
2001-00-28
Pages
45443-55
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NCI NIH HHS · CA55652 · United States
NCI NIH HHS · CA78038 · United States
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